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Study of the Molecular Dynamics of Multiarm Star Polymers with a Poly(ethyleneimine) Core and Poly(lactide) Multiarms

机译:具有聚乙烯亚胺核和聚丙交酯多臂的多臂星形聚合物的分子动力学研究

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摘要

Multiarm star polymers, denoted PEIx-PLAy and containing a hyperbranched poly(ethyleneimine) (PEI) core of different molecular weights x and poly(lactide) (PLA) arms with y ratio of lactide repeat units to N links were used in this work. Samples were preconditioned to remove the moisture content and then characterized by thermogravimetric analysis (TGA), differential scanning calorimetry (DSC) and dielectric relaxation spectroscopy (DRS). The glass transition temperature, Tg, is between 48 and 50 °C for all the PEIx-PLAy samples. The dielectric curves show four dipolar relaxations: γ, β, α, and α′ in order of increasing temperature. The temperatures at which these relaxations appear, together with their dependence on the frequency, allows relaxation maps to be drawn, from which the activation energies of the sub-Tg γ- and β-relaxations and the Vogel–Fulcher–Tammann parameters of the α-relaxation glass transition are obtained. The dependence of the characteristic features of these relaxations on the molecular weight of the PEI core and on the ratio of lactide repeat units to N links permits the assignation of molecular motions to each relaxation. The γ-relaxation is associated with local motions of the –OH groups of the poly(lactide) chains, the β-relaxation with motions of the main chain of poly(lactide), the α-relaxation with global motions of the complete assembly of PEI core and PLA arms, and the α′-relaxation is related to the normal mode relaxation due to fluctuations of the end-to-end vector in the PLA arms, without excluding the possibility that it could be a Maxwell–Wagner–Sillars type ionic peak because the material may have nano-regions of different conductivity.
机译:在这项工作中使用了多臂星形聚合物,表示为PEIx-PLAy,并包含不同分子量x的超支化聚(乙烯亚胺)(PEI)核和丙交酯重复单元与N键的y比为y的聚(丙交酯)(PLA)臂。对样品进行预处理以除去水分,然后通过热重分析(TGA),差示扫描量热法(DSC)和介电弛豫谱(DRS)进行表征。对于所有PEIx-PLAy样品,玻璃化转变温度Tg在48至50°C之间。介电曲线按温度升高的顺序显示出四个偶极弛豫:γ,β,α和α'。这些弛豫出现的温度,以及它们对频率的依赖性,可以绘制弛豫图,从中可以绘制出Tgγ和β松弛的活化能以及α的Vogel–Fulcher–Tammann参数获得松弛玻璃化转变。这些弛豫的特征依赖于PEI核心的分子量以及丙交酯重复单元与N键的比例的关系允许将分子运动分配给每个弛豫。 γ-松弛与聚(丙交酯)链的–OH基团的局部运动相关,β-松弛与聚(丙交酯)主链的运动相关,α-松弛与聚乳酸的完整组装体的整体运动相关。 PEI核心和PLA臂,并且由于PLA臂中端到端向量的波动,α'松弛与正常模式弛豫有关,但不排除它可能是Maxwell–Wagner–Sillars类型的可能性离子峰,因为该材料可能具有不同电导率的纳米区域。

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